Abstract
Nonoxidative coupling of methane exhibits promising prospect in that it affords value-added hydrocarbons and hydrogen with high atom economy. However, challenge remains in direct, selective conversion of methane to more valuable hydrocarbons like olefins. The current work presents a catalyst with well-dispersed Ta atoms anchored by graphitic C 3 N 4 -supported phthalocyanine. Such a catalyst is able to convert methane selectively to ethylene and propylene at a relatively low temperature (350 °C). The conception of the active center and construction of the catalyst have been described, and the origins of the catalytic performance are discussed.
Cite
CITATION STYLE
Hou, Y., Lan, Y., Qian, C., & Zhou, S. (2023). Direct Conversion of Methane to Propylene. Research, 6. https://doi.org/10.34133/research.0218
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